agriculture5 papersavg year 2020weak evidence

Under extreme drought (dry season 2024), reduced

Research gap analysis derived from 5 agriculture papers in our local library.

The gap

However, under extreme drought (dry season 2024), reduced irrigation was insufficient to sustain tree transpiration and yield in the monoculture system.

Evidence profile

Sourced from the abstract of the source papers, classified as general, drawn from work published between 2014 and 2026, spanning 4 journals. Those papers have been cited 85 times in total.

Research trend

Established — well-defined area with open sub-problems.

Supporting evidence — 5 representative gaps

  • Transpiration dynamics of Robusta coffee in response to irrigation regime, agroforestry system, and dry season severity (2026) · Agroforestry Systems · doi

    However, under extreme drought (dry season 2024), reduced irrigation was insufficient to sustain tree transpiration and yield in the monoculture system.

    generalabstractevidence 5/5
    Keywords: extreme drought season reduced irrigation insufficient sustain tree transpiration yield monoculture system
  • Modeling hydraulic redistribution and ecosystem response to droughts over the Amazon basin using Community Land Model 4.0 (CLM4) (2014) · Journal of Geophysical Research Biogeosciences · cited 42× · doi

    How and to what extent hydraulic redistribution may increase vegetation resistance to longer or more severe droughts than seasonal dryness have not been investigated yet, which is the focus of this study.

    generalabstractevidence 4/5
    Keywords: extent hydraulic redistribution increase vegetation resistance longer severe droughts seasonal dryness investigated focus
  • Seasonal dynamics of water use between Eucalyptus globulus and Pinus massoniana plantations in karst graben basins in China (2026) · Frontiers in Plant Science · doi

    However, the seasonal dynamics of transpiration and water uptake patterns of plantation species in these drought-prone landscapes remain poorly quantified.

    generalabstractevidence 4/5
    Keywords: seasonal dynamics transpiration water uptake patterns plantation species drought prone landscapes remain poorly quantified
  • Mapping and understanding dry season soil water drawdown by California montane vegetation (2016) · Ecohydrology · cited 24× · doi

    Abstract The ability of soil to supply plant available water during dry periods is a poorly understood but critically important ecosystem property that affects vegetation health and regional hydrology.

    generalabstractevidence 2/5
    Keywords: abstract ability soil supply plant available water periods poorly understood critically important ecosystem property affects
  • Applying the eco‐hydrological equilibrium hypothesis to model root distribution in water‐limited forests (2018) · Ecohydrology · cited 19× · doi

    Abstract Drought is a key driver of vegetation dynamics, but plant water‐uptake patterns and consequent plant responses to drought are poorly understood at large spatial scales.

    generalabstractevidence 2/5
    Keywords: drought plant abstract driver vegetation dynamics water uptake patterns consequent responses poorly understood large spatial

Questions about this gap

However, under extreme drought (dry season 2024), reduced irrigation was insufficient to sustain tree transpiration and yield in the monoculture system. This is supported by 5 representative gap statements extracted from 5 papers, rated weak evidence.

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